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Genome-wide identification and functional analysis of oleosin genes in Brassica napus L.

机译:甘蓝型油菜中油蛋白基因的基因组鉴定与功能分析

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Rapeseed is the third largest oil seed crop in the world. The seeds of this plant store lipids in oil bodies, and oleosin is the most important structural protein in oil bodies. However, the function of oleosin in oil crops has received little attention. In the present study, 48 oleosin sequences from the Brassica napus genome were identified and divided into four lineages (T, U, SH, SL). Synteny analysis revealed that most of the oleosin genes were conserved, and all of these genes experienced purifying selection during evolution. Three and four important oleosin genes from Arabidopsis and B. napus, respectively, were cloned and analyzed for function in Arabidopsis. Overexpression of these oleosin genes in Arabidopsis increased the seed oil content slightly, except for BnaOLE3. Further analysis revealed that the average oil body size of the transgenic seeds was slightly larger than that of the wild type (WT), except for BnaOLE1. The fatty acid profiles showed that the linoleic acid content (13.3% at most) increased and the peanut acid content (11% at most) decreased in the transgenic lines. In addition, the seed size and thousand-seed weight (TSW) also increased in the transgenic lines, which could lead to increased total lipid production. We identified oleosin genes in the B. napus genome, and overexpression of oleosin in Arabidopsis seeds increased the seed weight and linoleic acid content (13.3% at most).
机译:油菜籽是世界上第三大石油种子作物。这种植物储存油体的脂质的种子,油蛋白是油体中最重要的结构蛋白质。然而,油蛋白在油量作物中的功能很少受到关注。在本研究中,鉴定了来自芸苔类基因组的48个油蛋白序列并分成四个谱系(T,U,SH,SL)。同时分析显示,大多数油蛋白基因被保守,并且所有这些基因在进化期间经历了纯化选择。克隆并分析来自拟南芥和B. Napus的三个和四种重要的油蛋白基因。拟南芥的功能分析。除Bnaole3外,拟南芥中这些油蛋白基因的过表达略微增加了种子油含量。进一步的分析表明,除了Bnaole1之外,转基因种子的平均油体尺寸略大于野生型(WT)。脂肪酸谱表明,亚油酸含量(最多13.3%)增加,并且在转基因中,花生酸含量(11%最多)降低。另外,种子尺寸和千种子重量(TSW)也增加了转基因系中,这可能导致总脂质生产。我们鉴定了B. Napus基因组中的油蛋白基因,拟南芥种子中油蛋白的过表达增加了种子重量和亚油酸含量(最多13.3%)。

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